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超薄氧化锌/金属异质结构中通过非弹性电荷传输产生的表面等离子体光发射。

Plasmonic Light Emission by Inelastic Charge Transport in Ultrathin Zinc Oxide/Metal Heterostructures.

作者信息

Wiedenhaupt Henrik, Schulz Fabian, Parra López Luis E, Hammud Adnan, Park Youngwook, Shiotari Akitoshi, Kumagai Takashi, Wolf Martin, Müller Melanie

机构信息

Department of Physical Chemistry, Fritz-Haber Institute of the Max-Planck Society, Faradayweg 4-6, 14195 Berlin, Germany.

Department of Inorganic Chemistry, Fritz-Haber Institute of the Max-Planck Society, Faradayweg 4-6, 14195 Berlin, Germany.

出版信息

Nano Lett. 2025 Feb 19;25(7):2870-2877. doi: 10.1021/acs.nanolett.4c06099. Epub 2025 Feb 4.

Abstract

Controlling light emission from plasmonic nanojunctions is crucial for developing tunable nanoscale light sources and integrated photonic applications. It requires precise engineering of plasmonic nanocavity electrodes and a detailed understanding of electrically driven light emission. Using scanning tunneling microscopy-induced luminescence (STML), we studied plasmonic light emission from ultrathin ZnO/Ag(111) inside a silver nanocavity. At positive bias, plasmonic luminescence, caused by radiative decay of localized surface plasmons (LSP), is spectrally low-pass filtered by the ZnO layers. The emission of photon energies above the conduction band edge energy () of ZnO is suppressed, while the spectral distribution below resembles the LSP resonance on Ag(111). This spectral filtering is absent at negative bias and depends on the local electronic structure, as confirmed by spatial STML mapping. Our findings demonstrate that the ZnO conduction band serves as the initial state for plasmonic luminescence driven by inelastic electron transport across the ZnO/Ag(111) interface.

摘要

控制等离子体纳米结的光发射对于开发可调谐纳米级光源和集成光子应用至关重要。这需要对等离激元纳米腔电极进行精确设计,并深入了解电驱动光发射。利用扫描隧道显微镜诱导发光(STML),我们研究了银纳米腔内超薄ZnO/Ag(111)的等离子体光发射。在正偏压下,由局域表面等离子体(LSP)的辐射衰减引起的等离子体发光被ZnO层进行了光谱低通滤波。ZnO导带边缘能量()以上的光子能量发射被抑制,而低于该能量的光谱分布类似于Ag(111)上的LSP共振。如空间STML映射所证实的,这种光谱滤波在负偏压下不存在,并且取决于局部电子结构。我们的研究结果表明,ZnO导带作为通过ZnO/Ag(111)界面的非弹性电子传输驱动的等离子体发光的初始状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c14/11848997/301254d59f9b/nl4c06099_0001.jpg

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